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Earth Pressure Measurements Using Tactile Pressure Sensors in a Saturated Sand During Static and Dynamic Centrifuge Testing

机译:在静态和动态离心机测试过程中,在饱和沙土中使用触觉压力传感器进行土压力测量

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摘要

The performance of tactile pressure sensors used in centrifuge testing involving pressure measurements of laterally-spreading soils against a large, rigid, foundation element is evaluated. The tactile pressure sensor measurements were consistent with hydrostatic pressures measured by pressure transducers under most testing conditions, and agreed with at-rest geostatic pressures provided that the measurements were made against a rigid surface (i.e., no relative soil-structure movement). However, measured pressures decreased substantially under some conditions when shearing forces were transmitted to the pressure sensors. Dynamic pressures (minima and maxima pressure spikes) measured by the tactile pressure sensors differed from pressures measured by pore pressure transducers and, when uncorrected, they were considered unreliable. A dynamic pressure correction was developed to address this issue. Lastly, a comprehensive verification testing program was recommended for each unique centrifuge test configuration to improve interpretation of pressure sensor output.
机译:评估了离心测试中使用的触觉压力传感器的性能,该测试涉及对横向分布的土壤对大型刚性基础元件的压力测量。触觉压力传感器的测量值与在大多数测试条件下压力传感器测得的静水压力一致,并且与静止地静压力一致,只要该测量是针对坚硬的表面进行的(即没有相对的土壤结构运动)。但是,在某些情况下,当将剪力传递到压力传感器时,测得的压力会大大降低。触觉压力传感器测得的动态压力(最小和最大压力峰值)不同于孔隙压力传感器测得的压力,如果不进行校正,则认为它们是不可靠的。开发了动态压力校正来解决这个问题。最后,对于每种独特的离心机测试配置,建议采用全面的验证测试程序,以改善对压力传感器输出的解释。

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